English

Dynamical susceptibility of a near-critical non-conserved order parameter and B2g Raman response in Fe-based superconductors

Strongly Correlated Electrons 2018-07-11 v1 Superconductivity

Abstract

We analyze the dynamical response of a two-dimensional system of itinerant fermions coupled to a scalar boson ϕ\phi, which undergoes a continuous transition towards nematic order with dd-wave form-factor. We consider two cases: (a) when ϕ\phi is a soft collective mode of fermions near a Pomeranchuk instability, and (b) when it is an independent critical degree of freedom, such as a composite spin order parameter near an Ising-nematic transition. In both cases, the order-parameter is not a conserved quantity and the dd-wave fermionic polarization Π(q,Ω)\Pi (q, \Omega) remains finite even at q=0q=0. The polarization Π(0,Ω)\Pi (0, \Omega) has similar behavior in the two cases, but the relations between Π(0,Ω)\Pi (0, \Omega) and the bosonic susceptibility χ(0,Ω)\chi (0, \Omega) are different, leading to different forms of χ(0,Ω)\chi^{\prime \prime} (0, \Omega), as measured by Raman scattering. We compare our results with polarization-resolved Raman data for the Fe-based superconductors FeSe1x_{1-x}Sx_x, NaFe1x_{1-x}Cox_xAs and BaFe2_2As2_2. We argue that the data for FeSe1x_{1-x}Sx_x are well described within Pomeranchuk scenario, while the data for NaFe1x_{1-x}Cox_xAs and BaFe2_2As2_2 are better described within the "independent" scenario involving a composite spin order.

Keywords

Cite

@article{arxiv.1711.03984,
  title  = {Dynamical susceptibility of a near-critical non-conserved order parameter and B2g Raman response in Fe-based superconductors},
  author = {Avraham Klein and Samuel Lederer and Debanjan Chowdhury and Erez Berg and Andrey Chubukov},
  journal= {arXiv preprint arXiv:1711.03984},
  year   = {2018}
}